Nnadiekwe Chidera C, Abdulazeez Ismail, Haroon Muhammad, Peng Qing, Jalilov Almaz, Al-Saadi Abdulaziz
Chemistry Department, King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia.
Physics Department, King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia.
Front Chem. 2021 Apr 28;9:670833. doi: 10.3389/fchem.2021.670833. eCollection 2021.
Lithium-ion batteries (LIBs) have displayed superior performance compared to other types of rechargeable batteries. However, the depleting lithium mineral reserve might be the most discouraging setback for the LIBs technological advancements. Alternative materials are thus desirable to salvage these limitations. Herein, we have investigated using first-principles DFT simulations the role of polypyrrole, PP functionalization in improving the anodic performance of boron nitride nanosheet, BNNS-based lithium-ion batteries and extended the same to sodium, beryllium, and magnesium ion batteries. The HOMO-LUMO energy states were stabilized by the PP functional unit, resulting in a significantly reduced energy gap of the BNNS by 45%, improved electronic properties, and cell reaction kinetics. The cell voltage, ΔE was predicted to improve upon functionalization with PP, especially for Li-ion (from 1.55 to 2.06 V) and Na-ion (from 1.03 to 1.37 V), the trend of which revealed the influence of the size and the charge on the metal ions in promoting the energy efficiency of the batteries. The present study provides an insight into the role of conducting polymers in improving the energy efficiency of metal-ion batteries and could pave the way for the effective design of highly efficient energy storage materials.
与其他类型的可充电电池相比,锂离子电池(LIBs)已展现出卓越的性能。然而,锂矿产储备的枯竭可能是锂离子电池技术进步最令人沮丧的挫折。因此,需要替代材料来克服这些限制。在此,我们使用第一性原理密度泛函理论(DFT)模拟研究了聚吡咯(PP)功能化在改善基于氮化硼纳米片(BNNS)的锂离子电池阳极性能中的作用,并将其扩展到钠、铍和镁离子电池。PP功能单元使最高已占分子轨道(HOMO)-最低未占分子轨道(LUMO)能态稳定,导致BNNS的能隙显著降低45%,改善了电子性能和电池反应动力学。预测经PP功能化后电池电压ΔE会提高,特别是对于锂离子(从1.55 V提高到2.06 V)和钠离子(从1.03 V提高到1.37 V),这一趋势揭示了金属离子的尺寸和电荷对提高电池能量效率的影响。本研究深入了解了导电聚合物在提高金属离子电池能量效率中的作用,并可为高效储能材料的有效设计铺平道路。